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声波震动牙刷流体动力学作用对清除人体龈上菌斑的功效。

Efficacy of the Sonicare toothbrush fluid dynamic action on removal of human supragingival plaque.

作者信息

Stanford C M, Srikantha R, Wu C D

机构信息

Dows Institute for Dental Research, University of Iowa, Iowa City, USA.

出版信息

J Clin Dent. 1997;8(1 Spec No):10-4.

PMID:9487839
Abstract

The fluid pressure and shear forces generated by the high frequency bristle motion of the Sonicare sonic toothbrush remove adherent colonies of cultured bacteria from model dental surfaces in vitro. These dynamic fluid effects can remove bacteria in vitro even at distances up to 4 mm beyond the tips of the bristles. To evaluate the efficacy of the Sonicare in removing actual human plaque deposits formed in vivo, an intraoral model was developed. Enamel sections were obtained from extracted human teeth and mounted on acrylic resin palatal prostheses, worn by two volunteers. Six enamel sections were arranged as three pairs at different locations on the prosthesis, and plaque was allowed to form overnight (approximately 16 h). The sections were removed, placed in phosphate-buffered saline, and exposed in vitro to the sonic toothbrush for 5, 10 or 15 seconds. The bristle tips were maintained at distances of 2 or 3 mm from the enamel surface. As a comparison, sections were also exposed to another electric toothbrush (Interplak) for 10 seconds using a distance of 3 mm between the bristles and the enamel. Following exposure to the toothbrushes, residual bacteria were removed from the sections by ultrasonication for 15 seconds, and total viable cell counts determined by serial dilution on blood agar plates. One section from each pair was used to measure total (baseline) microbial accumulation. At a distance of 3 mm between bristles and enamel, the sections exposed to Sonicare demonstrated significant (p < 0.001) plaque removal of 56-78% relative to non-treated controls. In contrast, the control electric brush did not demonstrate removal of plaque bacteria after 10 seconds exposure. These quantitative results were visually confirmed by scanning electron microscopy. The findings demonstrate that the fluid dynamic activity generated by the sonic vibrations of the Sonicare toothbrush removed microbial plaque formed in vivo, even at a distance of 3 mm beyond its bristle tips.

摘要

飞利浦声波震动牙刷高频刷毛运动产生的流体压力和剪切力可在体外从模拟牙齿表面去除培养细菌的附着菌落。这些动态流体效应即使在刷毛尖端以外达4毫米的距离处也能在体外去除细菌。为了评估飞利浦声波震动牙刷在去除体内形成的实际人类牙菌斑沉积物方面的功效,开发了一种口腔内模型。从拔除的人类牙齿获取牙釉质切片,并安装在两名志愿者佩戴的丙烯酸树脂腭部假体上。六片牙釉质切片在假体上的不同位置成对排列为三组,让牙菌斑形成过夜(约16小时)。将切片取下,置于磷酸盐缓冲盐水中,并在体外暴露于声波牙刷5、10或15秒。刷毛尖端与牙釉质表面保持2或3毫米的距离。作为比较,切片还使用刷毛与牙釉质之间3毫米的距离暴露于另一款电动牙刷(Interplak)10秒。在暴露于牙刷后,通过超声处理15秒从切片上去除残留细菌,并通过在血琼脂平板上连续稀释来确定总活细胞数。每对中的一片切片用于测量总的(基线)微生物积累量。在刷毛与牙釉质之间距离为3毫米时,暴露于飞利浦声波震动牙刷的切片相对于未处理的对照显示出显著的(p < 0.001)56 - 78%的牙菌斑清除率。相比之下,对照电动牙刷在暴露10秒后未显示出牙菌斑细菌的清除。这些定量结果通过扫描电子显微镜在视觉上得到了证实。研究结果表明,飞利浦声波震动牙刷的声波振动产生的流体动力活动能够去除体内形成的微生物牙菌斑,即使在其刷毛尖端以外3毫米的距离处也是如此。

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